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MotionMetrix 系统与光电运动捕捉系统在行走和跑步步态测量中的一致性水平。

Level of Agreement between the MotionMetrix System and an Optoelectronic Motion Capture System for Walking and Running Gait Measurements.

机构信息

Department of Sport Science, Universität Innsbruck, 6020 Innsbruck, Austria.

Department of Physical Education and Sports, Faculty of Sport Sciences, University of Granada, 18016 Granada, Spain.

出版信息

Sensors (Basel). 2023 May 9;23(10):4576. doi: 10.3390/s23104576.

Abstract

Markerless motion capture systems (MCS) have been developed as an alternative solution to overcome the limitations of 3D MCS as they provide a more practical and efficient setup process given, among other factors, the lack of sensors attached to the body. However, this might affect the accuracy of the measures recorded. Thus, this study is aimed at evaluating the level of agreement between a markerless MSC (i.e., MotionMetrix) and an optoelectronic MCS (i.e., Qualisys). For such purpose, 24 healthy young adults were assessed for walking (at 5 km/h) and running (at 10 and 15 km/h) in a single session. The parameters obtained from MotionMetrix and Qualisys were tested in terms of level of agreement. When walking at 5 km/h, the MotionMetrix system significantly underestimated the stance and swing phases, as well as the load and pre-swing phases ( < 0.05) reporting also relatively low systematic bias (i.e., ≤ -0.03 s) and standard error of the estimate (SEE) (i.e., ≤0.02 s). The level of agreement between measurements was perfect (r > 0.9) for step length left and cadence and very large (r > 0.7) for step time left, gait cycle, and stride length. Regarding running at 10 km/h, bias and SEE analysis revealed significant differences for most of the variables except for stride time, rate and length, swing knee flexion for both legs, and thigh flexion left. The level of agreement between measurements was very large (r > 0.7) for stride time and rate, stride length, and vertical displacement. At 15 km/h, bias and SEE revealed significant differences for vertical displacement, landing knee flexion for both legs, stance knee flexion left, thigh flexion, and extension for both legs. The level of agreement between measurements in running at 15 km/h was almost perfect (r > 0.9) when comparing Qualisys and MotionMetrix parameters for stride time and rate, and stride length. The agreement between the two motion capture systems varied for different variables and speeds of locomotion, with some variables demonstrating high agreement while others showed poor agreement. Nonetheless, the findings presented here suggest that the MotionMetrix system is a promising option for sports practitioners and clinicians interested in measuring gait variables, particularly in the contexts examined in the study.

摘要

无标记运动捕捉系统 (MCS) 已被开发为一种替代解决方案,以克服 3D MCS 的局限性,因为它们提供了更实用和高效的设置过程,除其他因素外,还因为缺乏附着在身体上的传感器。然而,这可能会影响记录测量的准确性。因此,本研究旨在评估无标记运动捕捉系统(即 MotionMetrix)和光电运动捕捉系统(即 Qualisys)之间的一致性水平。为此,24 名健康的年轻成年人在单次测试中评估了他们的步行(5 公里/小时)和跑步(10 公里/小时和 15 公里/小时)。从 MotionMetrix 和 Qualisys 获得的参数根据一致性水平进行了测试。当以 5 公里/小时的速度行走时,MotionMetrix 系统显著低估了站立和摆动阶段以及负荷和预摆动阶段(<0.05),并报告了相对较低的系统偏差(即,≤-0.03 秒)和估计的标准误差(SEE)(即,≤0.02 秒)。左右步长、左右步频的测量值之间具有极好的一致性(r > 0.9),而左右步长、左右步态周期和步长的测量值之间具有非常大的一致性(r > 0.7)。关于 10 公里/小时的跑步,除了步幅时间、步幅率和长度、两腿摆动膝弯曲、两腿大腿弯曲等变量外,偏倚和 SEE 分析显示大多数变量都存在显著差异。左右步幅时间、左右步幅率、左右步长和垂直位移的测量值之间具有非常大的一致性(r > 0.7)。在 15 公里/小时时,除了两腿垂直位移、两腿落地膝弯曲、左站立膝弯曲、两腿大腿弯曲和伸展等变量外,偏倚和 SEE 分析显示大多数变量都存在显著差异。在 15 公里/小时的跑步中,当比较 MotionMetrix 和 Qualisys 时,步幅时间、步幅率和步长的参数之间具有几乎完美的一致性(r > 0.9)。两种运动捕捉系统之间的一致性因不同的变量和运动速度而异,一些变量表现出高度一致性,而其他变量则表现出较差的一致性。尽管如此,这里提出的发现表明,MotionMetrix 系统是对有兴趣测量步态变量的运动从业者和临床医生的有希望的选择,特别是在研究中检查的情况下。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b298/10220603/1095f902e984/sensors-23-04576-g001.jpg

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